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Moving on from Metchnikoff: thinking about microbiome therapeutics in cancer
Saman Maleki Vareki1,2,3, Ryan M Chanyi2,3,4,5, Kamilah Abdur-Rashid2,3,4
1Division of Experimental Oncology, Department of Oncology, Schulich School of Medicine, 1151 Richmond St, London, ON N6A 5C1, Canada.
Abstract:
Precision medicine now needs to also consider the microbiome in oncology treatment. Ingested substances, whether they are a carcinogenic or therapeutic agent, will likely come into contact with the microbiota. Even those delivered extra-intestinally can be influenced beyond xenobiotic metabolism by biochemical factors associated with the microbiota or by an immunological predisposition created by the microbiome. We need to undertake one of the largest paradigm shifts to ever occur in medicine, that is, every drug or ingested substance needs to be re-evaluated for its pharmacological effect post-microbiome interaction. The importance of the microbiome with a focus on the treatment of cancer is discussed. In the near future, it may be possible to specifically manipulate the microbial composition within cancer patients to improve the therapeutic potential of existing oncological agents. However, the current tools to do so are limited. Targeted modulation is likely to be achieved by addition, selective enhancement or depletion of specific microbial types. This may include compounds such as narrow spectrum antimicrobial agents or oligosaccharides that will kill or enhance the bacterial growth of distinct members of the microbiota, respectively. This will stimulate a new era in these fields.
Insights
Precision medicine must now integrate the microbiome into cancer treatment. Re-evaluating drug efficacy after microbiome interaction is crucial for improving oncology outcomes and developing new therapeutic strategies.
Area of Science:
- Oncology
- Microbiome Research
- Pharmacology
Background:
- The human microbiome significantly influences health and disease, particularly in cancer.
- Ingested and systemically delivered substances interact with the microbiome, affecting their efficacy.
- Current oncology treatments do not fully account for microbiome-mediated effects.
Purpose of the Study:
- To highlight the critical role of the microbiome in cancer treatment.
- To emphasize the need for re-evaluating drug-microbiome interactions.
- To discuss future directions in microbiome-targeted cancer therapy.
Main Methods:
- Review of existing literature on microbiome and oncology.
- Discussion of the impact of microbiome on xenobiotic metabolism and host immunity.
- Exploration of potential strategies for microbiome modulation.
Main Results:
- The microbiome can alter the pharmacological effects of cancer drugs.
- Microbiome composition influences treatment response and host immunity.
- Current tools for microbiome manipulation in cancer are limited.
Conclusions:
- A paradigm shift is needed to re-evaluate all drugs based on microbiome interaction.
- Targeted microbiome modulation offers future therapeutic potential in oncology.
- Developing novel compounds for precise microbial manipulation is essential for advancing cancer care.
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